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多孔氮化镓中激子发射效率的增强。

Enhanced excitonic emission efficiency in porous GaN.

作者信息

Ngo Thi Huong, Gil Bernard, Shubina Tatiana V, Damilano Benjamin, Vezian Stéphane, Valvin Pierre, Massies Jean

机构信息

Laboratoire Charles Coulomb, CNRS and Université de Montpellier, CC074, 34095, Montpellier, Cedex 5, France.

Faculty of Science and Technology, Meijo University, 1-501 Shiogamaguchi, Tenpaku-ku, Nagoya, 468-8502, Japan.

出版信息

Sci Rep. 2018 Oct 25;8(1):15767. doi: 10.1038/s41598-018-34185-1.

Abstract

We investigate the optical properties of porous GaN films of different porosities, focusing on the behaviors of the excitonic features in time-integrated and time-resolved photoluminescence. A substantial enhancement of both excitonic emission intensity and recombination rate, along with insignificant intensity weakening under temperature rise, is observed in the porous GaN films. These observations are in line with (i) the local concentration of electric field at GaN nanoparticles and pores due to the depolarization effect, (ii) the efficient light extraction from the nanoparticles. Besides, the porosification enlarges the surface of the air/semiconductor interface, which further promotes the extraction efficiency and suppresses non-radiative recombination channels. Our findings open a way to increasing the emission efficiency of nanophotonic devices based on porous GaN.

摘要

我们研究了不同孔隙率的多孔氮化镓薄膜的光学特性,重点关注了时间积分光致发光和时间分辨光致发光中激子特征的行为。在多孔氮化镓薄膜中,观察到激子发射强度和复合率都有显著增强,并且在温度升高时强度减弱不明显。这些观察结果与以下两点一致:(i)由于去极化效应,氮化镓纳米颗粒和孔隙处的局部电场集中;(ii)从纳米颗粒中高效提取光。此外,孔隙化扩大了空气/半导体界面的表面积,这进一步提高了提取效率并抑制了非辐射复合通道。我们的研究结果为提高基于多孔氮化镓的纳米光子器件的发射效率开辟了一条途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7452/6202416/1d8f0c879146/41598_2018_34185_Fig1_HTML.jpg

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